Simulation and analysis of DQ frame and P+Resonant controls for voltage source inverter to distributed generation

R. Carnieletto, D. B. Ramos, M. Simões, F. Farret
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引用次数: 15

Abstract

An inverter control design in DQ reference frame takes 3-phase sinusoidal signals and converts them to the DQ-frame to make a 2-phase based DC variable control. The error is calculated by subtracting the feedback from reference and then feedding it to PI controllers. The outputs of PI controllers are of the voltage form and transferred back to the ABC frame and fed to SPWM modules. P+Resonant controllers suggest establishing the control strategy in stationary (alpha-beta) frame. In this frame the axis are fix and three phase variables are mapped in a rotating vector with the same angular speed of the original signals. The P+Resonant controller has zero steady state error at the resonant frequency. This paper explains how to apply DQ-frame and P+Resonant for inverter controller design for grid connected single-phase Voltage Source Inverters (VSI). To evaluate the effectiveness of both control techniques, it is also presented simulated results with application of these controllers.
分布式发电电压源逆变器DQ框架和P+谐振控制的仿真分析
一种DQ参考系逆变器控制设计,将3相正弦信号转换到DQ参考系,实现基于2相的直流变量控制。误差是通过从参考中减去反馈,然后将其馈送给PI控制器来计算的。PI控制器的输出是电压形式,并传输回ABC帧并馈送到SPWM模块。P+谐振控制器建议在静止(α - β)框架中建立控制策略。在这个坐标系中,轴是固定的,三个相位变量被映射成与原始信号具有相同角速度的旋转矢量。P+谐振控制器在谐振频率处的稳态误差为零。本文阐述了如何将dq框架和P+谐振应用于并网单相电压源逆变器(VSI)的逆变控制器设计。为了评价两种控制方法的有效性,给出了应用这两种控制方法的仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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